Unlocking the Potential of Collagenases: Structures, Functions, and Emerging Therapeutic Horizons.

Q2 Agricultural and Biological Sciences 生物设计研究(英文) Pub Date : 2024-10-08 eCollection Date: 2024-01-01 DOI:10.34133/bdr.0050
Zhen-Zhen Wang, Kang Wang, Ling-Feng Xu, Chang Su, Jin-Song Gong, Jin-Song Shi, Xu-Dong Ma, Nan Xie, Jian-Ying Qian
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Abstract

Collagenases, a class of enzymes that are specifically responsible for collagen degradation, have garnered substantial attention because of their pivotal roles in tissue repair, remodeling, and medical interventions. This comprehensive review investigates the diversity, structures, and mechanisms of collagenases and highlights their therapeutic potential. First, it provides an overview of the biochemical properties of collagen and highlights its importance in extracellular matrix function. Subsequently, it meticulously analyzes the sources of collagenases and their applications in tissue engineering and food processing. Notably, this review emphasizes the predominant role played by microbial collagenases in commercial settings while discussing their production and screening methods. Furthermore, this study elucidates the methodology employed for determining collagenase activity and underscores the importance of an accurate evaluation for both research purposes and clinical applications. Finally, this review highlights the future research prospects for collagenases, with a particular focus on promoting wound healing and treating scar tissue formation and fibrotic diseases.

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释放胶原酶的潜能:释放胶原酶的潜力:结构、功能和新的治疗前景》(Unlock the Potential of Collagenases: Structures, Functions, and Emerging Therapeutic Horizons.
胶原酶是一类专门负责降解胶原蛋白的酶,由于其在组织修复、重塑和医疗干预中的关键作用而备受关注。这篇综合性综述研究了胶原酶的多样性、结构和机制,并强调了它们的治疗潜力。首先,它概述了胶原蛋白的生化特性,并强调了其在细胞外基质功能中的重要性。随后,它细致分析了胶原酶的来源及其在组织工程和食品加工中的应用。值得注意的是,本综述在讨论微生物胶原酶的生产和筛选方法的同时,还强调了微生物胶原酶在商业环境中发挥的主导作用。此外,本研究还阐明了确定胶原酶活性的方法,并强调了准确评估对于研究目的和临床应用的重要性。最后,本综述强调了胶原蛋白酶的未来研究前景,尤其侧重于促进伤口愈合、治疗疤痕组织形成和纤维化疾病。
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来源期刊
CiteScore
3.90
自引率
0.00%
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0
审稿时长
12 weeks
期刊最新文献
Progress in the Metabolic Engineering of Yarrowia lipolytica for the Synthesis of Terpenes. Structural Bases of Dihydroxy Acid Dehydratase Inhibition and Biodesign for Self-Resistance. Next-Generation Tumor Targeting with Genetically Engineered Cell Membrane-Coated Nanoparticles. Microbial Cell Factories in the Bioeconomy Era: From Discovery to Creation. Unlocking the Potential of Collagenases: Structures, Functions, and Emerging Therapeutic Horizons.
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